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Thermal and flow resistance characteristics of a parallel-pipe type natural heat transfer air-conditioning terminal device for nearly zero energy buildings

机译:平行管式天然传热空调终端装置的热和流动性特性,用于近零能量建筑

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摘要

A nearly zero energy building (NZEB) can achieve significant energy saving by reducing its air-conditioning load greatly. At the same time, an NZEB should also achieve a comfortable thermal environment. In this paper, a parallel-pipe type natural heat transfer air-conditioning terminal device is proposed and studied for use in NZEB. The terminal device is able to provide both heating and cooling (including sensible and latent cooling) for a building without noise or air disturbance. The advantages of the terminal device have been demonstrated by comparing with other air-conditioning terminals. Experimental data of the heating and cooling performance of the device under different operation conditions were collected and analysed. The calculation models for the heating and cooling capacities of the device were obtained through data regression analysis, and the flow resistance curve of the device was obtained by means of experimental measurement under various flow rates. In addition, comparison was made on the heating and cooling capacities between the device and a radiant floor that also features little noise or air disturbance. Results show that the heating and cooling capacities of the device were 41.5% and 46.8% higher than the maximum capacities of the radiant floor, respectively. This research laid a foundation for the engineering application of the air-conditioning terminal device.
机译:近零能量建筑(NEEB)可以通过大大降低空调负荷来实现显着的节能。与此同时,NEZEB也应该实现舒适的热环境。本文提出并研究了平行管式天然传热空调终端装置,用于NEEB。终端设备能够为没有噪声或空气扰动的建筑物提供加热和冷却(包括明智和潜冷)。通过与其他空调终端相比,已经证明了终端设备的优点。收集并分析了在不同操作条件下的装置的加热和冷却性能的实验数据。通过数据回归分析获得设备的加热和冷却能力的计算模型,通过各种流速下的实验测量获得器件的流动阻力曲线。此外,对设备和辐射地板之间的加热和冷却能力进行了比较,该辐射车间也具有很小的噪音或空气扰动。结果表明,该器件的加热和冷却能力分别高于辐射地板的最大容量的41.5%和46.8%。本研究为空调终端装置的工程应用奠定了基础。

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